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Modulation of leaf attributes and water use efficiency in Quercus suber along a rainfall gradient

机译:降雨梯度下栎木叶片特性和水分利用效率的调控

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摘要

The aim of our study was to assess the intraspecific variation of a range of leaf attributes and carbon isotope discrimination (Delta), in Quercus suber, along an 800 mm rainfall gradient in Portugal. We measured specific leaf area (SLA), leaf thickness (LT) and density, and used leaf carbon isotope content as an integrated record of water use efficiency. The values of SLA of Q. suber were strongly, positively correlated with rainfall, decreasing as rainfall decreased. This reduction was mainly driven by LT, which was tightly correlated with SLA (R = -0.80, P < 0.001), and steadily increased with declining rainfall. The significant increase in carbon isotope discrimination towards the wetter end of the gradient, with a difference of 4.2aEuro degrees in Delta between the two extremes, suggests a strong adjustment of leaf gas exchange to water availability. Leaf changes associated with precipitation in Q. suber thus seem to influence water economy, since reduction of SLA with the increase of LT with aridity improves water use efficiency. These data suggest that this evergreen tree species relies on its foliage plasticity and physiology to overcome water shortage.
机译:我们的研究目的是评估沿葡萄牙800毫米降水梯度的栎栎的一系列叶片属性和碳同位素判别(Delta)的种内变异。我们测量了比叶面积(SLA),叶厚度(LT)和密度,并将叶碳同位素含量用作水利用效率的综合记录。 sub藜的SLA值与降雨呈强烈正相关,随着降雨的减少而降低。这种减少主要是由LT驱动的,LT与SLA密切相关(R = -0.80,P <0.001),并且随着降雨的减少而稳定增加。碳同位素分辨力在梯度的较湿端显着增加,两个极端之间的Delta差为4.2aEuro度,这表明对叶片气体交换的强烈调整是针对水的可利用性。因此,与枯萎Q.降水相关的叶片变化似乎会影响水的经济性,因为随着干旱增加LT随SLT的降低而降低了SLA,从而提高了水分利用效率。这些数据表明,这种常绿乔木树种依靠其叶子的可塑性和生理特性来克服缺水问题。

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